Dissecting mitogenomic conflict to illuminate angiosperm deep phylogeny:Sequence and architectural evidence
摘要Deep relationships in the angiosperm tree of life remain highly controversial.To address this,we first assembled the complete mitochondrial genomes for Ceratophyllum demersum and Chloranthus sessili-folius,confirming a well-supported sister relationship that starkly conflicts with nuclear and plastid data.To dissect this classic cyto-nuclear conflict,we developed the'PhyloForensics'framework,a novel diagnostic approach to systematically identify sources of phylogenetic instability.This framework revealed that signal heterogeneity(topological entropy variance)and information content(the pro-portion of informative sites)are the primary drivers of gene-tree conflict.Empirically validating this,we show that removing a small subset of"loudly conflicted"genes resolves deep-level incongruence,yielding a single,highly-supported topology previously obscured by noise.Finally,complementing this sequence-based resolution,we demonstrate that mitogenome architecture provides powerful phylo-genetic signals,revealing predictable,mitogenome-wide evolutionary patterns,such as a significant negative correlation between branch length and both GC content and RNA editing sites.By integrating a validated conflict-resolution framework with architectural genomics,our study provides a compre-hensive strategy for navigating the complexities of deep evolutionary histories.
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